Strongly coupled metal-organic frameworks on layered bimetallic hydroxide derived N, S Co-doped porous carbon frameworks embedding with CoS2 for energy storage

Junling Wang, Longfei Han, Na Wu, Zixuan Zhang, Can Liao, Jingwen Wang, Yongchun Kan, Yuan Hu

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摘要

In this work, we propose the fabrication of N, S co-doped carbon framework with confined CoS2 nanoparticles and rooted carbon nanotubes (NSPCF@CoS2). As LIBs anode, the NSPCF@CoS2 electrode gives an inceptive discharge capacity of 921.5 mA h g−1, with Coulombic efficiency of above 97% during the 200 cycles (except for the previous 5 cycles). As SIBs anode (the applied voltage range is 0.4–3 V), the NSPCF@CoS2 electrode performs a steady and relatively high capacity (over 448.0 mA h g−1) during the 1650 cycles, and an extremely low capacity decay rate of 0.018% per cycle is obtained. Also, the NSPCF@CoS2 electrode shows a high capacity of 545.3 mA h g−1 even at 8 A g−1 (the applied voltage range is 0.1–3 V). This NSPCF@CoS2 electrode shows a comparable or even higher rate performance than many reported transition metal chalcogenides materials, confirming its promising usage. The presence of pseudocapacitive contribution is verified, after the deep investigation on Li+/Na+ storage behavior and reaction kinetics. In addition, this rationally designed structure gives potential application in supercapacitor.

源语言英语
文章编号227789
期刊Journal of Power Sources
453
DOI
出版状态已出版 - 31 3月 2020
已对外发布

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